Summary In Swiss mice sustained energy intake (SusEI) during peak lactation has been previously suggested to be constrained by the capacity of the mammary glands to produce milk, supporting the “peripheral limitation” hypothesis. Here we experimentally examined if SusEI in these mice was not only limited peripherally but also constrained by the ability to dissipate heat. Female Swiss mice were provided with additional offspring above their natural litter sizes and were maintained during lactation either in warm (23°C) or cold (5°C) conditions. Food intake, thermogenesis, litter size and mass, and the weight of the mammary glands were measured. No differences were observed in asymptotic food intake at peak lactation, litter mass and thermoge...
In this investigation energy demands from offspring were varied for the MF1 mouse after litter sizes...
Objectives: We quantified the effect of environmental temperature on mouse energy homeostasis and bo...
<p>(<b>A</b>) Energy expenditure across all photoperiods, (<b>B</b>) photoperiod-averaged energy exp...
Effect of cold exposure on energy budget and thermogenesis during lactation in Swiss mice raising la...
Acknowledgements We are grateful to Ke-Xin Chen, Song Tan and Jing Cao (Wenzhou University) for care...
We would like to thank the animal house staff and all members of the Energetics group for their inva...
The heat dissipation limit theory suggests that heat generated during metabolism limits energy intak...
The heat dissipation limit theory suggests that heat generated during metabolism limits energy intak...
Limits to sustained energy intake during lactation were investigated in MF1 mice. The feeding of hi...
Daily changes in body temperature as well as physical activeness from mating to pregnancy were illus...
Osei Duah Agemang was supported by a scholarship from the Cape University, Ghana. Lobke Maria Vaanho...
The components of energy expenditure, total metabolic rate (TMR), resting metabolic rate (RMR), ther...
Development of obesity and associated disorders is caused by imbalance between energy intake and ene...
Objective: To improve understanding of mouse energy homeostasis and its applicability to humans, we ...
Acknowledgements We are grateful to our technicians and several students for their help during this ...
In this investigation energy demands from offspring were varied for the MF1 mouse after litter sizes...
Objectives: We quantified the effect of environmental temperature on mouse energy homeostasis and bo...
<p>(<b>A</b>) Energy expenditure across all photoperiods, (<b>B</b>) photoperiod-averaged energy exp...
Effect of cold exposure on energy budget and thermogenesis during lactation in Swiss mice raising la...
Acknowledgements We are grateful to Ke-Xin Chen, Song Tan and Jing Cao (Wenzhou University) for care...
We would like to thank the animal house staff and all members of the Energetics group for their inva...
The heat dissipation limit theory suggests that heat generated during metabolism limits energy intak...
The heat dissipation limit theory suggests that heat generated during metabolism limits energy intak...
Limits to sustained energy intake during lactation were investigated in MF1 mice. The feeding of hi...
Daily changes in body temperature as well as physical activeness from mating to pregnancy were illus...
Osei Duah Agemang was supported by a scholarship from the Cape University, Ghana. Lobke Maria Vaanho...
The components of energy expenditure, total metabolic rate (TMR), resting metabolic rate (RMR), ther...
Development of obesity and associated disorders is caused by imbalance between energy intake and ene...
Objective: To improve understanding of mouse energy homeostasis and its applicability to humans, we ...
Acknowledgements We are grateful to our technicians and several students for their help during this ...
In this investigation energy demands from offspring were varied for the MF1 mouse after litter sizes...
Objectives: We quantified the effect of environmental temperature on mouse energy homeostasis and bo...
<p>(<b>A</b>) Energy expenditure across all photoperiods, (<b>B</b>) photoperiod-averaged energy exp...